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Effects of the microstructure and powder compositions of a micro-porous layer for the anode on the performance of high concentration methanol fuel cell
Authors:Yeong-Soo Kim  Dong-Hyun Peck  Sang-Kyung Kim  Doo-Hwan Jung  Seongyop Lim  Sung-Hyun Kim
Affiliation:1. Fuel Cell Research Center, Korea Institute of Energy Research (KIER), 152 Gajeong, Yuseong, 305-343 Daejeon, Republic of Korea;2. Department of Chemical and Biological Engineering, Korea University, 1 Anam 5, Seongbuk, 136-713 Seoul, Republic of Korea;3. Advanced Energy Technology, University of Science and Technology, 217 Gajeong, Yuseong, 305-350 Daejeon, Republic of Korea
Abstract:To investigate the effects of the microstructure and powder compositions for the micro-porous layer (MPL) of an anode on the cell performance of a direct methanol fuel cell (DMFC) using a highly concentrated methanol solution up to 7 M, various powders and their compositions were applied as a filler of the MPL in the membrane electrode assembly (MEA). Several nano- and microstructured carbons such as commercial carbon black (CB), spherical activated carbon (AC), multi-walled carbon nanotube (MWCNT), and platelet carbon nanofiber (PCNF) were selected with different morphology and surface properties, and a meso-porous silica (one of SBA series) was also included for its porous and hydrophilic properties. The coating morphology and physical properties such as porosity and gas permeability were measured, and electrochemical properties of MEA with the MPL were examined by using current–voltage polarization, electrochemical impedance spectroscopy, and voltammetric analyses. A mixture of different carbons was found to be effective for lowering methanol crossover with sustaining electrical conductivity and gas permeability. A MEA with modified-anode MPLs made of CB (50 vol%) and PCNF (50 vol%) powders showed a maximum power density of 67.7 mW cm−2 under operation with a 7 M concentration of methanol.
Keywords:Direct methanol fuel cell  Anode  Micro-porous layer  High concentration methanol operation  Cell performance
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